Product Description
Product Description
NUS 3.0A miniature crawler crane, powered by Yangma diesel engine, is A fully proportional intelligent spider crane with remote control. The power and hydraulic system are all made of original parts from Japan, making the power output efficient. CHINAMFG proportional valve is adopted in the system, can according to actual needs, to realize the stepless speed regulating, leg have a key leveling function, eliminating the tedious leg leveling operation, work more efficient, hanging arm, leg and walking to realize self-locking interlock, and install a torque control, makes the equipment operation more secure, especially equipped with step pioneering double speed winding, fast speed, high efficiency.
Detailed Photos
Adopt double speed winch; Single rate, hook with double speed, speed is 24m/min and 48m/min, winch drum capacity hit 100 meters, especially suitable for high-rise buildings of the object transport.
The lifting arm adopts double oil cylinder, unique design of 5 pieces arm, long extension, short contraction. Under the same lifting weight, the crane volume is smaller (the length of spider crane is 2.9 meters), and it can take the elevator with a load of 3 tons to go upstairs, and it can make the boom to a certain extent of load expansion.
Sensor of outrigger on the ground Each leg is equipped with grounding sensor, when the leg off the ground danger, the machine alarm, stop working.Ensure that the machine will not overturn. The crane arm is equipped with moment limiter, each length shows the corresponding limit of load, to ensure that the crane works under the safe lifting weight, and with the moment limiter together to form a double insurance, It can prevent the rollover accident and prevent overload and damage to the boom.
Interlock system After the lifting arm is reset, the supporting leg and travel can be operated to protect the safety of the crane.
380V electric power and gasoline engine (diesel engine) dual power. In places where the engine cannot be used, it can be dragged by wire for operation (especially in areas where gasoline and diesel are strictly controlled), and it can also be equipped with battery pure electric spider crane.
The outrigger is fixed from multiple angles, and the outrigger can be adjusted and fixed according to the construction environment in the face of different narrow working environment. Legs can be operated independently according to the surrounding environment, or 4 legs can be controlled by remote control at the same time to achieve one-button leveling. Beginners can also operate legs easily, so that the car body is always in a level state.
Product Parameters
Model | NU3.0 | |
Specification | 2.95t*1.3m | |
Maximum working radius | 8.3m*0.14t | |
Maximum ground lifting height | 9.2m | |
Maximum underground lifting height | – | |
Winch device | Hook speed | 6.5m/min(4) |
Rope type | Φ8mm×45mm | |
Telescopic system | Boom type | Full automatic 5 section |
Boom length | 2.65m-8.92m | |
Telescopic length/time | 6.36m/26sec | |
Up and downs | Boom angle/time | 0°-75°/14 sec |
SlKB System | SlKB angle/time | 360°continuous/40sec |
Outrigger System | Outrigger active form | Automatic for the 1 section,manual adjustment for 2,3 section. |
Maximum extended dimensions | 3900mm*3750mm | |
Traction System | Working way | Hydraulic motor driven,stepless speed change |
Working speed | 0-2.9Km/h | |
Ground length×width×2 | 1571mm*200mm*2 | |
Grade ability | 20° | |
Ground pressure | 51Kpa | |
Safety Devices | Air level,Moment limiter(Height limiter),Alarm Device,Emergency Stop Button | |
System voltage | DC12V | |
Diesel engine (optional) | Type | 2TNV70-PYU |
Displacement | 570ml | |
Maximum output | 7.5kw | |
Starting method | Electric staring | |
Fuel tank capacity | 11L | |
Operation temperature | -5°C-40°C | |
Battery capacity | 12v45Ah | |
Petrol engine | Model | Kohler |
Displacement | 389.2ml | |
Maximum output | 6.6kw | |
Starting method | Recoil start/electric starting | |
Fuel tank capacity | 6L | |
Operation temperature | -5°C-40°C | |
Battery capacity | 12v 36Ah | |
Electric motor | Power suppler voltage | AC 380V |
Power | 4KW | |
Remote Control | Type | BOX1.1(optional) |
Operation range | 100m | |
Water -proof standard | IP67 | |
Dimension | Length *width *length | 2900mm*800mm*1450mm |
Weight | Vehicle weight | 2050kg |
Package size | 3200mm*1200mm*1900mm |
Packaging & Shipping
Product advantange
The plane is full remote control models of 3 tons crawler crane, the function is all ready fuselage compact, hydraulic walking, safety design can prevent wrong operation, to adapt to the rugged outdoors, u-shaped telescopic boom, a weight display, leg sensor protection, high strength, and by using the 3 tons of the company the first winding double speed, high speed, efficient fast, cost-effective.
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After-sales Service: | Give The Solution Within 6 Hours |
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Max. Lifting Height: | 9.2m |
Rated Loading Capacity: | 3ton |
Certification: | ISO9001, CE |
Condition: | New |
Warranty: | 1 Year |
Customization: |
Available
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What are the typical tolerances and quality standards for injection molded parts?
When it comes to injection molded parts, the tolerances and quality standards can vary depending on several factors, including the specific application, industry requirements, and the capabilities of the injection molding process. Here are some general considerations regarding tolerances and quality standards:
Tolerances:
The tolerances for injection molded parts typically refer to the allowable deviation from the intended design dimensions. These tolerances are influenced by various factors, including the part geometry, material properties, mold design, and process capabilities. It’s important to note that achieving tighter tolerances often requires more precise tooling, tighter process control, and additional post-processing steps. Here are some common types of tolerances found in injection molding:
1. Dimensional Tolerances:
Dimensional tolerances define the acceptable range of variation for linear dimensions, such as length, width, height, and diameter. The specific tolerances depend on the part’s critical dimensions and functional requirements. Typical dimensional tolerances for injection molded parts can range from +/- 0.05 mm to +/- 0.5 mm or even tighter, depending on the complexity of the part and the process capabilities.
2. Geometric Tolerances:
Geometric tolerances specify the allowable variation in shape, form, and orientation of features on the part. These tolerances are often expressed using symbols and control the relationships between various geometric elements. Common geometric tolerances include flatness, straightness, circularity, concentricity, perpendicularity, and angularity. The specific geometric tolerances depend on the part’s design requirements and the manufacturing capabilities.
3. Surface Finish Tolerances:
Surface finish tolerances define the acceptable variation in the texture, roughness, and appearance of the part’s surfaces. The surface finish requirements are typically specified using roughness parameters, such as Ra (arithmetical average roughness) or Rz (maximum height of the roughness profile). The specific surface finish tolerances depend on the part’s aesthetic requirements, functional needs, and the material being used.
Quality Standards:
In addition to tolerances, injection molded parts are subject to various quality standards that ensure their performance, reliability, and consistency. These standards may be industry-specific or based on international standards organizations. Here are some commonly referenced quality standards for injection molded parts:
1. ISO 9001:
The ISO 9001 standard is a widely recognized quality management system that establishes criteria for the overall quality control and management of an organization. Injection molding companies often seek ISO 9001 certification to demonstrate their commitment to quality and adherence to standardized processes for design, production, and customer satisfaction.
2. ISO 13485:
ISO 13485 is a specific quality management system standard for medical devices. Injection molded parts used in the medical industry must adhere to this standard to ensure they meet the stringent quality requirements for safety, efficacy, and regulatory compliance.
3. Automotive Industry Standards:
The automotive industry has its own set of quality standards, such as ISO/TS 16949 (now IATF 16949), which focuses on the quality management system for automotive suppliers. These standards encompass requirements for product design, development, production, installation, and servicing, ensuring the quality and reliability of injection molded parts used in automobiles.
4. Industry-Specific Standards:
Various industries may have specific quality standards or guidelines that pertain to injection molded parts. For example, the aerospace industry may reference standards like AS9100, while the electronics industry may adhere to standards such as IPC-A-610 for acceptability of electronic assemblies.
It’s important to note that the specific tolerances and quality standards for injection molded parts can vary significantly depending on the application and industry requirements. Design engineers and manufacturers work together to define the appropriate tolerances and quality standards based on the functional requirements, cost considerations, and the capabilities of the injection molding process.
How do innovations and advancements in injection molding technology influence part design and production?
Innovations and advancements in injection molding technology have a significant influence on part design and production. These advancements introduce new capabilities, enhance process efficiency, improve part quality, and expand the range of applications for injection molded parts. Here’s a detailed explanation of how innovations and advancements in injection molding technology influence part design and production:
Design Freedom:
Advancements in injection molding technology have expanded the design freedom for part designers. With the introduction of advanced software tools, such as computer-aided design (CAD) and simulation software, designers can create complex geometries, intricate features, and highly optimized designs. The use of 3D modeling and simulation allows for the identification and resolution of potential design issues before manufacturing. This design freedom enables the production of innovative and highly functional parts that were previously challenging or impossible to manufacture using conventional techniques.
Improved Precision and Accuracy:
Innovations in injection molding technology have led to improved precision and accuracy in part production. High-precision molds, advanced control systems, and closed-loop feedback mechanisms ensure precise control over the molding process variables, such as temperature, pressure, and cooling. This level of control results in parts with tight tolerances, consistent dimensions, and improved surface finishes. Enhanced precision and accuracy enable the production of parts that meet strict quality requirements, fit seamlessly with other components, and perform reliably in their intended applications.
Material Advancements:
The development of new materials and material combinations specifically formulated for injection molding has expanded the range of properties available to part designers. Innovations in materials include high-performance engineering thermoplastics, bio-based polymers, reinforced composites, and specialty materials with unique properties. These advancements allow for the production of parts with enhanced mechanical strength, improved chemical resistance, superior heat resistance, and customized performance characteristics. Material advancements in injection molding technology enable the creation of parts that can withstand demanding operating conditions and meet the specific requirements of various industries.
Process Efficiency:
Innovations in injection molding technology have introduced process optimizations that improve efficiency and productivity. Advanced automation, robotics, and real-time monitoring systems enable faster cycle times, reduced scrap rates, and increased production throughput. Additionally, innovations like multi-cavity molds, hot-runner systems, and micro-injection molding techniques improve material utilization and reduce production costs. Increased process efficiency allows for the economical production of high-quality parts in larger quantities, meeting the demands of industries that require high-volume production.
Overmolding and Multi-Material Molding:
Advancements in injection molding technology have enabled the integration of multiple materials or components into a single part through overmolding or multi-material molding processes. Overmolding allows for the encapsulation of inserts, such as metal components or electronics, with a thermoplastic material in a single molding cycle. This enables the creation of parts with improved functionality, enhanced aesthetics, and simplified assembly. Multi-material molding techniques, such as co-injection molding or sequential injection molding, enable the production of parts with multiple colors, varying material properties, or complex material combinations. These capabilities expand the design possibilities and allow for the creation of innovative parts with unique features and performance characteristics.
Additive Manufacturing Integration:
The integration of additive manufacturing, commonly known as 3D printing, with injection molding technology has opened up new possibilities for part design and production. Additive manufacturing can be used to create complex mold geometries, conformal cooling channels, or custom inserts, which enhance part quality, reduce cycle times, and improve part performance. By combining additive manufacturing and injection molding, designers can explore new design concepts, produce rapid prototypes, and efficiently manufacture customized or low-volume production runs.
Sustainability and Eco-Friendly Solutions:
Advancements in injection molding technology have also focused on sustainability and eco-friendly solutions. This includes the development of biodegradable and compostable materials, recycling technologies for post-consumer and post-industrial waste, and energy-efficient molding processes. These advancements enable the production of environmentally friendly parts that contribute to reducing the carbon footprint and meeting sustainability goals.
Overall, innovations and advancements in injection molding technology have revolutionized part design and production. They have expanded design possibilities, improved precision and accuracy, introduced new materials, enhanced process efficiency, enabled overmolding and multi-material molding, integrated additive manufacturing, and promoted sustainability. These advancements empower part designers and manufacturers to create highly functional, complex, and customized parts that meet the demands of various industries and contribute to overall process efficiency and sustainability.
Are there different types of injection molded parts, such as automotive components or medical devices?
Yes, there are various types of injection molded parts that are specifically designed for different industries and applications. Injection molding is a versatile manufacturing process capable of producing complex and precise parts with high efficiency and repeatability. Here are some examples of different types of injection molded parts:
1. Automotive Components:
Injection molding plays a critical role in the automotive industry, where it is used to manufacture a wide range of components. Some common injection molded automotive parts include:
- Interior components: Dashboard panels, door handles, trim pieces, instrument clusters, and center consoles.
- Exterior components: Bumpers, grilles, body panels, mirror housings, and wheel covers.
- Under-the-hood components: Engine covers, air intake manifolds, cooling system parts, and battery housings.
- Electrical components: Connectors, switches, sensor housings, and wiring harnesses.
- Seating components: Seat frames, headrests, armrests, and seatbelt components.
2. Medical Devices:
The medical industry relies on injection molding for the production of a wide range of medical devices and components. These parts often require high precision, biocompatibility, and sterilizability. Examples of injection molded medical devices include:
- Syringes and injection pens
- Implantable devices: Catheters, pacemaker components, orthopedic implants, and surgical instruments.
- Diagnostic equipment: Test tubes, specimen containers, and laboratory consumables.
- Disposable medical products: IV components, respiratory masks, blood collection tubes, and wound care products.
3. Consumer Products:
Injection molding is widely used in the production of consumer products due to its ability to mass-produce parts with high efficiency. Examples of injection molded consumer products include:
- Household appliances: Television and audio equipment components, refrigerator parts, and vacuum cleaner components.
- Electronics: Mobile phone cases, computer keyboard and mouse, camera components, and power adapters.
- Toys and games: Action figures, building blocks, puzzles, and board game components.
- Personal care products: Toothbrushes, razor handles, cosmetic containers, and hairdryer components.
- Home improvement products: Light switch covers, door handles, power tool housings, and storage containers.
4. Packaging:
Injection molding is widely used in the packaging industry to produce a wide variety of plastic containers, caps, closures, and packaging components. Some examples include:
- Bottles and containers for food, beverages, personal care products, and household chemicals.
- Caps and closures for bottles and jars.
- Thin-walled packaging for food products such as trays, cups, and lids.
- Blister packs and clamshell packaging for retail products.
- Packaging inserts and protective foam components.
5. Electronics and Electrical Components:
Injection molding is widely used in the electronics industry for the production of various components and enclosures. Examples include:
- Connectors and housings for electrical and electronic devices.
- Switches, buttons, and control panels.
- PCB (Printed Circuit Board) components and enclosures.
- LED (Light-Emitting Diode) components and light fixtures.
- Power adapters and chargers.
These are just a few examples of the different types of injection molded parts. The versatility of injection molding allows for the production of parts in various industries, ranging from automotive and medical to consumer products, packaging, electronics, and more. The specific design requirements and performance characteristics of each part determine the choice of materials, tooling, and manufacturing processes for injection molding.
editor by CX 2024-01-30
China best torque limiter factory manufacturer & supplier EPT Hoist Ztc250V552 25 Ton Mobile Hydraulic Telescopic Boom Truck Crane with top quality & best price
We – EPG Group the most significant gearbox & motors , torque limiter couplings and gears manufacturing unit in China with 5 different branches. For more specifics: Mobile/whatsapp/telegram/Kakao us at: 0086~13083988828 13858117778083988828
EPT Hoist Ztc250V552 twenty five Ton Mobile Hydraulic Tel: +86~13083988828escopic Increase Truck Crane
Specs
This sort of truck crane, one of the classic products in the exact same trade, has earned a excellent reputation from the consumers.The truck crane adopts self-manufactured unique-function chassis with 6×4 generate. The ergonomic streamline semi-mounted driver’s cab with double wing door, which has obtained a national patent, tends to make it hassle-free for rear rider to get on/off taxi.
The crane adopts WEICHAI Steyr engine which is specially created for individuals cranes that usually vacation at low pace. This type of motor not only can make big output torque when it starts and increase the traveling speed speedily, but also has exceptional starting up performance and great gradeability.
The crane is outfitted with 8-velocity gearbox which adjustments equipment effortlessly and is of easy construction and tends to make routine maintenance convenient.The crane is equipped with a 33.3m extended hexagon-segment boom which is produced of large-energy metal, so the boom has strong resistance to bending and torsion.
The distinctively-developed round arc sliding block (possessing received a national patent) can make the pressure dispersed much more evenly, the load carrying capability more powerful, and the adjustment simpler. The neighborhood rigidity in increase supporting level is very good, which has improved the lifting ability on growth with exact same thickness and attained the purpose of increased lifting potential on lighter increase.
The distinctive manual total proportional management incorporates the positive aspects of classic lever handle and electrical-hydraulic pilot handle. It not only reserves the merits of basic safety & dependability of unique manage construction and reduced maintenance price, but also realizes that the wor ept speed of actuating mechanism is only proportional to the opening degree of handle valves rather than affected by the load. Additionally, it has enhanced the pace-regulation performance.
The slewing system has the functions of protecting the crane instantly when the crane is overloaded, lowering the impacts, and activating hydraulic brake when the hydraulic handle valve is in neutral position as properly as free of charge swing. In addition, it can instantly make boom, wire rope and lifted load slew at the same time, and decrease the sway of increase and load whilst the crane begins or stops rapidly, and accelerates or decelerates slewing.
We have made consistent enhancements on our products, for occasion, adding radiator for hydraulic method and mounting hydraulic oil tank of large ability on the slewing desk. As a result, the radiating functionality of hydraulic program is enhanced and the ongoing wor ept hours are 2~3 times of that of the exact same trade’s items.
The crane is equipped with outrigger lamps which can facilitate procedure at evening. The crane is geared up with large-quality load second limiter which has such benefits as excellent precision and complete information revealed on the exhibit. In this way, the safe lifting procedure can be assured.
Main Parameter:
Merchandise |
Worth |
||
Wor ept overall performance specification |
Max. rated total lifting capacity |
25000 kg |
|
Max. load moment of basic boom |
980 kN.m |
||
Max. load second with max. primary increase length |
573 kN.m |
||
Max. lifting height of simple growth |
eleven.5 m |
||
Max. lifting peak of primary increase |
33.8 m |
||
Max. lifting top of fly jib |
41.6 m |
||
Wor ept pace |
Max. velocity of one rope on major winch
|
120 m/min |
|
Max. speed of single rope onauxiliary winch |
105 m/min |
||
Derric ept time of growth |
forty s |
||
Tel: +86~13083988828escopic time of growth |
sixty s |
||
Slewing velocity |
~2.2 r/min |
||
Touring specification |
Max. touring pace |
72 km/h |
|
Max. gradeability |
40 % |
||
Min. turning circle diameter |
20 m |
||
Min. ground clearance |
220 mm |
||
Restrictions for exhaust pollutants and smoke |
Comply with relevant specifications |
||
Oil usage per hundred kilometers |
46 L |
||
Mass specification |
Deadweight of crane in traveling situation |
28930 kg |
|
Full car kerb mass |
28800 kg |
||
Front axle load |
6300 kg |
||
Rear axle load |
22630 kg |
||
Dimension specification |
Total proportions(L×W×H) |
13000×2500×3450 mm |
|
Base on outriggers |
five.36 m |
||
DThe Torq-Tender torque limiter is tamper-proof. Once mounted, the torque price are not able to be modified. This attribute guarantees the integrity of the machined design and style, and renders expensive and perhaps risky calibration procedures unnecessary. Torque worth is controlled by the portion variety that is purchased that benefit determines what spring is utilised throughout assembly of the torque limiter.istance in between outriggers |
6.1 m |
||
Primary boom duration |
10.5~33.3 m |
||
Principal increase angle° |
-2~80 |
||
Fly jib size |
8 m |
||
Offset angle of fly jib° |
, 30 |
||
Chassis |
Product |
ZLJ5314 |
|
Class |
II |
||
Attribute No. |
ZLJ5314D3.1 |
||
Motor |
Design |
WP10.270 |
|
Rated electricity |
199/2200 kW/r/min |
||
Max. output torque |
1100/1200~1600 N.m/r/min |
The use of first gear manufacturer’s (OEM) element numbers or trademarks , e.g. CASE® and John Deere® are for reference purposes only and for indicating merchandise use and compatibility. Our business and the outlined substitute elements contained herein are not sponsored, accredited, or produced by the OEM.
100 near me made in China – replacement parts – in San Salvador El Salvador Ton EPT MG Hydraulic Mobile Telescopic Boom Truck Crane Qy100K-I with top quality
We – EPG Team the most significant gearbox & motors , torque limiter couplings and gears manufacturing facility in China with 5 different branches. For more details: Mobile/whatsapp/telegram/Kakao us at: 0086~13083988828 13858117778083988828
one hundred ton EPT Hydraulic Cellular Tel: +86~13083988828escopic Growth Truck Mounted Crane QY100K-I
one. 6 axles a few for steering a few for driving
two. Volvo motor for uperstructure, EURO III Mercedes-Benz twin-manner control (first) EFI Motor for carrier
three. Transmission: ZF Germany, handle place on the elevation-twenty °
4. Prolonged 5-area U-condition mast booms and two jibs, dual unbiased winch, Hirschman power limiter, Electric pilot manage system
five. Centralized lubrication systems, entire head taxi, electrical power ratio of pilot,
six. PLC built-in manage method, heating and cooling air-conditioning on and off.
seven. Rear Check out Show
eight. Complete dimension(mm): 15230*3000*3860
7. Max. Operation bodyweight(Kg): 65000
Wide cab
5-segment U section growth
Solitary cylinder luffing and double-winch
Guide mechanical manage
Spacious and luxurious streamline taxi
U growth system
Continually optimize the boom area, completely releasing the carrying ability of the plates, which makes the lifting much more trustworthy and safer.
Compact growth head
Increase the jib size, which can increase the wor ept radius to the most.
Hydraulic pipeline
The pipeline adopts substantial-precision chilly drawing metal pipe, matching with the reducing ferrule, which is very good loo ept and easy to keep.
Working cab
It has massive space and broad sights. The handle levers and instrument buttons are at hand.
Torque limiter
The colorful Liquid crystal display screen of the torque limiter can demonstrates all the critical working information.
Motor
Realistic matching, energy efficiency and environmental defense, and powerful power fulfill the cost-effective operating of the required electrical power.
Category | Item | Device | Parameter | ||
Outline Proportions | Overall duration | mm | 15600 | ||
Overall width | mm | 3000 | |||
Overall peak | mm | 3850 | |||
Wheel foundation | mm | 1420+2420+1800+1420+1505 | |||
Track | mm | 2610/2610/2610/2315/2315/2610 | |||
Front overhang | mm | 2550 | |||
Rear overhang | mm | 2225 | |||
Total vehicle mass in journey configuration | kg | 54900 | |||
Axle load | 1st Axle | kg | 8000 | ||
2nd Axle | kg | 8000 | |||
3rd Axle | kg | 7900 | |||
4th Axle | kg | 12000 | |||
fifth Axle | kg | 12000 | |||
6th Axle | kg | 7000 | |||
Power | Superstructure engine | Product | TAD720VE | TAD750VE | |
Rated power | kW/(r/min) | 174/2300 | 181/2300 | ||
Rated torque | N. m/(r/min) | 854/1400 | 1050/1500 | ||
Carrier engine | Model | OM460LA. E3A/one | |||
Rated energy | kW/(r/min) | 360/1800 | |||
Rated torque | N. m/(r/min) | 2200/1300 | |||
Travel Overall performance | Max. travel spe320 Sequence The 320 Collection has been designed to meet the want for an cost-effective, compact and reputable torque limiter. The optimized design provides a strong, backlash-free torque limiter that aids shield tools from the harming effects induced by overloading a travel train.ed | km/h | 80 | ||
Min. travel pace | km/h | 0.five | |||
Min. turning diameter | m | 24 | |||
Min. turning diameter at boom suggestion | m | 26.six | |||
Min. ground clearance | mm | 300 | |||
Approach angle | ° | 20 | |||
Departure angle | ° | 14 | |||
Bra ept length (at thirty km/h ) | m | ≤ ten | |||
Max. quality capability | % | 40 | |||
Oil consumption for each 100km | L | 70 | |||
Noise | Exterior sound stage in the course of acceleration touring | dB (A) | ≤ 88 | ||
Noise level at seated position | dB (A) | ≤ ninety |
Make sure you contact:
Cellular/+86~13083988828 13858117778705652725
The use of original gear manufacturer’s (OEM) portion quantities or emblems , e.g. CASE® and John Deere® are for reference needs only and for indicating product use and compatibility. Our business and the outlined alternative elements contained herein are not sponsored, accepted, or created by the OEM.